首页> 外文期刊>Geological Society of America Bulletin >Impact of glacial-lake paleofloods on valley development since glacial termination II: A conundrum of hydrology and scale for the lowstand Brahmaputra-Jamuna paleovalley system
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Impact of glacial-lake paleofloods on valley development since glacial termination II: A conundrum of hydrology and scale for the lowstand Brahmaputra-Jamuna paleovalley system

机译:冰川湖古食品对山谷发展自冰川终止的影响II:普拉赫马省Paleovalle System的水文和规模难题

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摘要

To better define the base of the Brahmaputra River paleovalley, we analyzed an extensive borehole data set from the subaerial Bengal delta and a 255-km-long multichannel seismic survey along the modern river. The data reveal that the paleovalley floor is defined by a gravel unit containing bouldersized clasts up to 30 cm in diameter, deposited after ca. 30 ka but before ca. 9 ka. Paleohydrology during that time and the previous glacial maximum was characterized by a weak monsoon and reduced river discharge, both of which are inconsistent with large valley formation. However, our work indicates that glacial-lake outburst floods sourced from the Tibetan reaches of the Brahmaputra were routed through the lowstand valley, producing megaflood-scale discharge capable of transporting gravel and cannibalizing the valley margins. The timing of these glacial-lake outburst flood-driven discharge events was coincident with valley development and explains the anomalously large width of the valley and basal gravel surface. Despite the underfit scale of Brahmaputra discharge following the last glacial period, a strengthening monsoon and high sediment discharge in the early Holocene subsequently contributed to the efficient infilling of the massive paleovalley by the mid-Holocene. In a sequence stratigraphic context, this work provides an example of a major unconformity that developed late in the eustatic cycle (i.e., during early transgression rather than an earlier, protracted response to sealevel lowering) and in response to a perturbation originating in the catchment instead of changing accommodation in the basin. As such, it represents a geologically instantaneous time surface that can be used as a marker for stratigraphic correlation but one that is not in phase with eustatic sea-level fall.
机译:为了更好地定义Brahmaputra River Paleoverley的基座,我们分析了沿着二角形孟加拉特拉的大量钻孔数据,以及沿着现代河流的255公里长的多通道地震调查。数据表明,古价郡地板由砾石单元限定,该砾石单元沉积在CA之后沉积的直径高达30厘米。 30 ka但在加利福之前。 9 ka。在此期间的古水资源和先前的冰川最大值的特征在于弱季隆和河流减少,两者都与大谷地层不一致。然而,我们的工作表明,冰川湖爆发来自荆棘山区的藏来的洪水,通过低地山谷排出,生产能够运输砾石和伏击谷边距的巨型级放电。这些冰川湖突出洪水驱动的排放事件的时间与谷开发一致,并解释了谷和基础砾石表面的异常大宽度。尽管在最后一次冰川期后Brahmaputra放电的欠款,但在全新世之后,加强季风和高沉的沉积物排放随后有助于中全新世中的大量浅古罗维利。在序列地层背景下,该作品提供了在南部循环中晚期发展的主要无关的一个例子(即,在早期的过渡期间,早期过渡期间的延伸反应的延伸反应),并且响应于源自集水区的扰动在盆地中改变住宿。因此,它表示可以用作地层相关的标记的地质上瞬时的时间表面,而是一种与QueStatic Sea-Leval秋季的相位不相位的标记。

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    Vanderbilt Univ Dept Earth &

    Environm Sci Nashville TN 37235 USA;

    Vanderbilt Univ Dept Earth &

    Environm Sci Nashville TN 37235 USA;

    Vanderbilt Univ Dept Earth &

    Environm Sci Nashville TN 37235 USA;

    Columbia Univ Lamont Doherty Earth Observ Palisades NY 10964 USA;

    Shell Int Explorat &

    Prod Inc Houston TX 77082 USA;

    Univ Bremen Fac Geosci D-28359 Bremen Germany;

    Univ Minnesota Dept Earth Sci Minneapolis MN 55455 USA;

    Univ Bremen Fac Geosci D-28359 Bremen Germany;

    Vanderbilt Univ Dept Earth &

    Environm Sci Nashville TN 37235 USA;

    Univ Bremen Fac Geosci D-28359 Bremen Germany;

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  • 正文语种 eng
  • 中图分类 地质学;
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